7 November 2023 Multiple nonreciprocal transmission based on defect modes of photonic crystals
Yu Shen, Xiaomeng Zhang, Guanxia Yu, Xin Chen, Haodong Wang, Guangyao Yuan
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Abstract

A one-dimensional multilayer structure consisting of two symmetric parts with defect layers is designed, and properties of the multiple nonreciprocal transmission are investigated due to symmetrically distributed magneto-optic layers with opposite magnetic fields in composite structures. The transmission coefficient and energy band diagram of the system are obtained based on transfer matrix method. The numerical results show that there are three pairs of nonreciprocal dispersive curves with different modes in a certain bandgap. The influence of the thickness of defect layer and incident angle on nonreciprocal frequencies is also discussed. The multiple nonreciprocal transmission could in turn be potentially useful in optical isolators and optical resonators.

© 2023 Society of Photo-Optical Instrumentation Engineers (SPIE)
Yu Shen, Xiaomeng Zhang, Guanxia Yu, Xin Chen, Haodong Wang, and Guangyao Yuan "Multiple nonreciprocal transmission based on defect modes of photonic crystals," Journal of Nanophotonics 17(4), 046002 (7 November 2023). https://doi.org/10.1117/1.JNP.17.046002
Received: 7 March 2023; Accepted: 11 October 2023; Published: 7 November 2023
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Cited by 1 scholarly publication.
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KEYWORDS
Interfaces

Magnetism

Molybdenum

Electromagnetic radiation

Dispersion

Solids

Optical transmission

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